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色氨酸特征喇曼标记的构象和振动特征之间的关系。

Relationships between conformational and vibrational features of tryptophan characteristic Raman markers.

机构信息

LVTS, INSERM U1148. 74 rue Marcel Cachin. 93017 Bobigny Cédex France.

Institut Pasteur, Université Paris Cité, CNRS UMR3523, Unité de Chimie des Biomolécules, F-75015 Paris, France.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2024 Aug 5;316:124377. doi: 10.1016/j.saa.2024.124377. Epub 2024 Apr 27.

Abstract

Tryptophan (Trp) residue provides characteristic vibrational markers to the middle wavenumber spectral region of the Raman spectra recorded from peptides and proteins. In this report, we were particularly interested in eight Trp Raman markers, referred to as W (i = 1,…,8). All responsible for pronounced Raman lines, these markers originate from indole moiety, a bicyclic conjugated segment involved in the Trp structure. Numerous investigations have previously attempted to relate the variations observed in the spectral features of these markers to the environmental changes of Trp residues. To emphasize the most important points we can mention (i) the variations in the Raman profile of W (∼1360 cm) and W (∼1340 cm), frequently observed as a doublet with variable intensity ratio. These two markers were thought to result from a Fermi-resonance effect between certain planar and nonplanar modes; (ii) the changes observed in the wavenumbers and relative intensities of W, W (∼880 cm) and W (∼760 cm) were supposed to be related to the accessibility of Trp to surrounding water molecules; and (iii) the wavenumber fluctuations of W (∼1550 cm), taken as a Trp side chain orientational marker. However, some ambiguities still exist regarding the interpretation of these markers, needing further clarification. Herein, upon a joint experimental and theoretical analysis based on a multiconformational approach, attention was paid to the relationships between structural and vibrational features of three indole-containing compounds with increasing structural complexity, i.e., skatole (3-methylindole), tryptophan, and tripeptide Gly-Trp-Gly. This study clearly shows that the existing assignments given to certain Trp Raman markers should be reconsidered, especially those based on the Fermi-resonance origin of W-W (∼1360-1340 cm) doublet, as well as the purely environmental dependence of W and W markers.

摘要

色氨酸(Trp)残基为肽和蛋白质的中波数拉曼光谱记录提供了特征振动标记。在本报告中,我们特别感兴趣的是 8 个色氨酸拉曼标记物,分别记为 W(i=1,…,8)。这些标记物都与吲哚部分有关,吲哚部分是参与色氨酸结构的双环共轭片段,它们都源自吲哚部分,负责明显的拉曼线。先前有许多研究试图将这些标记物的光谱特征变化与色氨酸残基的环境变化联系起来。为了强调最重要的几点,我们可以提到:(i)W(∼1360 cm)和 W(∼1340 cm)标记物的拉曼谱变化,通常观察为具有可变强度比的双峰。这两个标记物被认为是由于某些平面和非平面模式之间的费米共振效应所致;(ii)观察到的 W、W(∼880 cm)和 W(∼760 cm)的波数和相对强度变化与色氨酸与周围水分子的可及性有关;(iii)W(∼1550 cm)的波数波动被视为色氨酸侧链取向标记物。然而,这些标记物的解释仍然存在一些歧义,需要进一步澄清。在此,基于多构象方法的联合实验和理论分析,我们关注了三种吲哚类化合物(即 skatole(3-甲基吲哚)、色氨酸和三肽 Gly-Trp-Gly)结构和振动特征之间的关系,这些化合物的结构复杂性逐渐增加。这项研究清楚地表明,应该重新考虑某些色氨酸拉曼标记物的现有分配,特别是那些基于 W-W(∼1360-1340 cm)双峰的费米共振起源以及 W 和 W 标记物的纯环境依赖性。

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